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FROM THE OPERATIONAL EXPERIENCE OF THE MINING COMPANIES AND THE ORGANIZATIONS
UFA STATE PETROLEUM TECHNOLOGICAL UNIVERSITY
Название Enhancement of cleaning efficiency in slant wells using self-opening circulation sub
DOI 10.17580/gzh.2024.11.03
Автор Ganiev R. I., Agliullin A. Kh., Ismakov R. A., Deboir L.
Информация об авторе

Ufa State Petroleum Technological University, Ufa, Russia

R. I. Ganiev, Research Engineer, radmirganiev@mail.ru
A. Kh. Agliullin, Doctor of Engineering Sciences, Associate Professor
R. A. Ismakov, Doctor of Engineering Sciences, Professor
L. Deboir, Research Engineer

Реферат

To meet the rising demand for hydrocarbons from Russia’s friendly countries, domestic oil and gas companies should stick to the most advanced methods of oil and gas production. In conformity with the 2030 Energy Strategy of Russia, it is required to create conditions for reliable supply of markets with fuel at sustainable prices. One of the common problems connected with accumulation of drill cuttings in a well is sticking. Understanding of drill cuttings transport process, as well as development of new technologies and facilities towards optimization of these processes is critical for enhancement of directional drilling efficiency and for prevention of complications. In case of drilling with incomplete removal of drill cuttings, a pad of broken chips forms on the well bottom. When a drill string is pulled out of the well, the pad moves together with the wider lower portion of the drill string assembly. The annular blockage and gripping happen as a result, which can lead to sticking of the drill string and to total loss of circulation. Special attention is given to the use of self-opening circulation subs designed to increase the upward flow rate in the annular space, which facilitates more efficient cuttings removal and reduces the risk of complications such as mechanical sticking and increased wear of equipment. The results of the field tests of these subs under challenging drilling conditions, conducted in West Texas and in Russia, are presented, demonstrating increased drilling rates, improved wellbore cleaning efficiency, and significant reductions in well construction time. The findings confirm the potential for substantial improvements in drilling technology through the implementation of innovative solutions, and strengthen the position of Russian technologies in the context of import substitution. These results open up prospects for further development of methods and technologies for drilling in complex geological conditions.
This work was supported by the Ministry of Science and Higher Education of the Russian Federation under Agreement No. 075-15-2022-297 within the framework of creation and development of the World-Class Research Center for Liquid Hydrocarbons.

Ключевые слова Slant wells, directional drilling, self-opening circulation subs, cuttings removal, efficiency
Библиографический список

1. World Energy Outlook 2023. International Energy Agency, 2023. 355 p.
2. Khabibullin I. A. Improvement of Drill Cuttings Transport in Horizontal Drilling : Dissertation of Candidate of Engineering Sciences. Ufa, 2008. 160 p.
3. Khuzin R. R. Improvement of the reliability of operation of downhole sucker-rod pumps in complicated operational conditions. Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. 2019. No. 6(114). pp. 16–19.
4. Iktisanov V. A. Description of steady inflow of fluid to wells with different configurations and various partial drilling-in. Journal of Mining Institute. 2020. Vol. 243. pp. 305–312.
5. Likhushin A. M. Technology of Slant Well Cleaning from Drill Cuttings in Drilling in Complicated Conditions : Dissertation of Candidate of Engineering Sciences. Saratov, 1998. 172 p.
6. Naganawa S., Nomura T. Simulating transient behavior of cuttings transport over whole trajectory of extended-reach well. IADC/SPE Asia Pacific Drilling Technology Conference and Exhibition. Bangkok, 2006. ID SPE-103923-MS.
7. Andrianov N. I. Improvement of Well Cleaning from Drill Cuttings to Prevent Difficulties in Incompetent Rock Drilling : Dissertation of Candidate of Engineering Sciences. Stavropol, 1994. 180 p.
8. Doan Q. T., Oguztoreli M., Masuda Y., Yonezawa T., Kobayashi A. et al. Modeling of transient cuttings transport in underbalanced drilling (UBD). SPE Journal. 2003. Vol. 8, Iss. 2. pp. 160–170.
9. Cameron C. Drilling fluids design and management for extended reach drilling. SPE/IADC Middle East Drilling Technology Conference. Bahrain, 2001. ID SPE-72290-MS.
10. Shelkovnikova Yu. N. Well Flushing Quality Control by Monitoring and Adjustment of Rheological Characteristics of Drill Mud : Dissertation of Candidate of Engineering Sciences. Izhevsk, 2020. 162 p.
11. Lysakova E. I. Impact of Added Nano Particles on Drill Mud Flow : Dissertation of Candidate of Physico-Mathematical Sciences. Krasnoyarsk, 2022. 148 p.
12. Lykhin P. A., Usov E. V., Ulyanov V. N., Kayurov N. K., Chukhno V. I. Predictive modeling of sludge removal when drilling an inclined well. Avtomatizatsiya, telemekhanizatsiya i svyaz v neftyanoy promyshlennosti. 2018. No. 9. pp. 52–57.
13. Skoff G., Mahfoudh F., Jeong C., Makarychev-Mikhailov S., Petryshak O. et al. Machine learning-based drilling system recommender: Towards optimal BHA and fluid technology selection. SPE/IADC International Drilling Conference and Exhibition. Stavanger, 2023. ID SPE-212559-MS.
14. Ismakov R. A., Agliullin A. Kh., Ganiev R. I., Deboir L., Asfandiyarov I. R. et al. FlowMax circulating sub is an effective solution for drilling of directional wells. Burenie i neft. 2023. No. 4. pp. 18–21.
15. Islam M. R., Hossain M. E. Drilling Engineering: Towards Achieving Total Sustainability. Sustainable Oil and Gas Development Series. Cambridge : Gulf Professional Publishing, 2020. 800 p.
16. Erge O., Van Oort E. Modeling the effects of drill string eccentricity, pipe rotation and annular blockage on cuttings transport in deviated wells. Journal of Natural Gas Science and Engineering. 2020. Vol. 7 9. ID 103221.
17. Zhou J., Tian S., Zhou L., Xian X., Zhang C. et al. Effect of sub-/super-critical CO2 and brine exposure on the mechanical and acoustic emission characteristics of shale. Journal of Natural Gas Science and Engineering. 2021. Vol. 90. ID 10 3921.

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